An antenna beam control method of spaceborne multi-mode imaging SAR based on real-time computing framework

Cheng Qian, Zelong Shao, Xiaolong Si, Hao Wang, Chao Li, M. Xing
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引用次数: 1

Abstract

Since the United States launched the first synthetic aperture radar satellite in 1978, it has attracted widespread attention because of its ability to obtain high-resolution images of almost every corner of the earth, all day, all weather, and regardless of national borders and politics. At present, spaceborne SAR has been widely used in civil and military applications. With the complexity of spaceborne SAR application scenarios, different imaging widths and imaging resolutions are required to deal with different imaging scenarios, imaging targets, and imaging tasks. For different imaging requirements, different imaging algorithms have been proposed, including strip imaging mode, spotlight imaging mode, scan imaging mode, etc. It is of great significance to integrate multiple imaging modes in a spaceborne SAR. Different imaging modes have different requirements for antenna beam pointing. And each imaging mode has the need to quickly switch beam pointing. The phased array antenna can realize the switching of beam pointing with different beam control codes, and the speed of beam direction switching depends on the calculation speed of beam control code. Therefore, the calculation strategy and the calculation speed of the beam control code have become the main problems which restricting the multi-mode imaging of spaceborne SAR. In this paper, a real-time antenna beam control method based on the computing framework of DSP, FPGA and CPU is proposed. According to different imaging modes, the corresponding beam control code calculation strategy is designed. The test results show that relying on the high-performance computing power of DSP and the logic control capabilities of FPGA and CPU, it perfectly meets the needs of quickly completing beam control code calculation to realize beam pointing switching in different imaging modes. This method makes it possible to realize multimode imaging of spaceborne SAR.
基于实时计算框架的星载多模成像SAR天线波束控制方法
自1978年美国发射第一颗合成孔径雷达卫星以来,由于能够获得地球上几乎每一个角落全天、全天候、不分国界和政治的高分辨率图像,受到了广泛关注。目前,星载SAR已广泛应用于民用和军事领域。随着星载SAR应用场景的复杂性,需要不同的成像宽度和成像分辨率来处理不同的成像场景、成像目标和成像任务。针对不同的成像要求,提出了不同的成像算法,包括条形成像模式、聚束成像模式、扫描成像模式等。在星载SAR中集成多种成像模式具有重要意义,不同的成像模式对天线波束指向有不同的要求。并且每种成像模式都需要快速切换光束指向。相控阵天线可以用不同的波束控制码实现波束指向的切换,波束方向切换的速度取决于波束控制码的计算速度。因此,波束控制码的计算策略和计算速度成为制约星载SAR多模成像的主要问题。本文提出了一种基于DSP、FPGA和CPU计算框架的实时天线波束控制方法。针对不同的成像模式,设计了相应的波束控制码的计算策略。测试结果表明,依托DSP的高性能计算能力和FPGA、CPU的逻辑控制能力,完全满足快速完成波束控制码计算,实现不同成像模式下波束指向切换的需求。该方法使星载SAR的多模成像成为可能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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